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Design and Analysis of Potential Phased Array Configurations for Wideband Near-Field Beamforming

Delfini, Duccio; Tervo, Nuutti; Javed, Muhammad Y.; Leinonen, Marko E.; Pärssinen, Aarno (2025-02-20)

 
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https://doi.org/10.1109/ARRAY58370.2024.10880447

Delfini, Duccio
Tervo, Nuutti
Javed, Muhammad Y.
Leinonen, Marko E.
Pärssinen, Aarno
IEEE
20.02.2025

D. Delfini, N. Tervo, M. Y. Javed, M. E. Leinonen and A. Pärssinen, "Design and Analysis of Potential Phased Array Configurations for Wideband Near-Field Beamforming," 2024 IEEE International Symposium on Phased Array Systems and Technology (ARRAY), Boston, MA, USA, 2024, pp. 1-6, doi: 10.1109/ARRAY58370.2024.10880447

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doi:https://doi.org/10.1109/ARRAY58370.2024.10880447
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https://urn.fi/URN:NBN:fi:oulu-202502261848
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Abstract

Near-field beamforming has similar challenges with beam squint like the typical far-field beamforming. This paper analyzes the spatial and frequency domain behaviors of a arc-shaped phased array with a corporate-fed and a series-fed feeding architecture. Both the configurations have the antennas placed in the geometric locus having a constant electrical length of the optical paths from the focal point in space to the power-combining node at the printed circuit board (PCB) through individual antenna elements. In this way, the signals from all the antennas will arrive in phase at the summing node in a given link condition. The impact of the dielectric constant of the PCB material is also considered. In the corporate-fed scheme, simulation results show that the array has a focal point whose position is independent from the frequency, due to the equalized delays of the phased array paths. Moreover, the frequency response in such a focal point is flat and the band is potentially not limited by beam squint. On the contrary, with a series-fed architecture, phase shifters can be added to compensate for the transmission line lengths among the antennas, at the cost of a reduced bandwidth, due to the angular-dependent squinting phenomenon. The paper reveals that the behavior of the beam squint phenomenon can be altered by geometric array configuration and feeding architecture in analog beamforming systems.
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